State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai, 200050, P.R. China.
University of Chinese Academy of Sciences, Beijing, 100049, P.R. China.
Chemistry. 2017 Mar 8;23(14):3328-3337. doi: 10.1002/chem.201604813. Epub 2016 Dec 22.
The templated synthesis of hydroxyapatite (HAP) nanowires@metal-organic framework (MOF) core/shell nanofibers (named HAP@MIL-100(Fe) nanofibers) is demonstrated. The ultralong hydroxyapatite nanowires are adopted as a hard template for the nucleation and growth of MIL-100(Fe) (a typical MOF) through the layer-by-layer method. The Coulombic and chelation interactions between Ca ions on the surface of the HAP nanowires and the COO organic linkers of MIL-100(Fe) play key roles in the formation process. The as-prepared, water-stable HAP@MIL-100(Fe) nanofibers exhibit peroxidase-like activity toward the oxidation of different peroxidase substrates in the presence of H O , accompanied by a clear color change of the solution. Furthermore, a flexible, recyclable HAP@MIL-100(Fe) test paper is prepared successfully by using HAP@MIL-100(Fe) nanofibers as building blocks. A simple, low-cost, and sensitive colorimetric method for the detection of H O and glucose is established based on the as-prepared, flexible, recyclable HAP@MIL-100(Fe) test paper. More importantly, the HAP@MIL-100(Fe) test paper can be recovered easily for reuse by simply dipping in absolute ethanol for just 30 min, thus showing excellent recyclability. With its combination of advantages such as easy transportation, easy storage and use, rapid recyclability, light weight, and high flexibility, this HAP@MIL-100(Fe) test paper is promising for wide applications in various fields.
羟基磷灰石(HAP)纳米线@金属-有机骨架(MOF)核/壳纳米纤维(命名为 HAP@MIL-100(Fe)纳米纤维)的模板合成得到了证明。通过层层法,采用超长羟基磷灰石纳米线作为 MIL-100(Fe)(一种典型的 MOF)成核和生长的硬模板。HAP 纳米线上表面的 Ca 离子与 MIL-100(Fe)的 COO 有机配体之间的库仑和螯合相互作用在形成过程中起关键作用。所制备的、水稳定的 HAP@MIL-100(Fe)纳米纤维在 H O 的存在下对不同过氧化物酶底物的氧化表现出过氧化物酶样活性,伴随着溶液颜色的明显变化。此外,通过使用 HAP@MIL-100(Fe)纳米纤维作为构建块,成功制备了一种灵活、可回收的 HAP@MIL-100(Fe)试纸。基于制备的灵活、可回收的 HAP@MIL-100(Fe)试纸,建立了一种简单、低成本、灵敏的用于检测 H O 和葡萄糖的比色法。更重要的是,HAP@MIL-100(Fe)试纸可以通过简单地浸入无水乙醇中 30 分钟即可轻松回收再利用,从而显示出优异的可回收性。这种 HAP@MIL-100(Fe)试纸具有易于运输、储存和使用、快速可回收性、重量轻、高柔韧性等优点,有望在各个领域得到广泛应用。